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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Extraction of gravitational-wave energy in higher dimensional numerical relativity using the Weyl tensor
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Extraction of gravitational-wave energy in higher dimensional numerical relativity using the Weyl tensor

机译:使用Weyl Tensor提取高尺寸数值相对性的重力波能

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Gravitational waves are one of the most important diagnostic tools in the analysis of strong-gravity dynamics and have been turned into an observational channel with LIGO's detection of GW150914. Aside from their importance in astrophysics, black holes and compact matter distributions have also assumed a central role in many other branches of physics. These applications often involve spacetimes with D > 4 dimensions where the calculation of gravitational waves is more involved than in the four dimensional case, but has now become possible thanks to substantial progress in the theoretical study of general relativity in D > 4. Here, we develop a numerical implementation of the formalism by Godazgar and Reall [1]-based on projections of the Weyl tensor analogous to the Newman-Penrose scalars-that allows for the calculation of gravitational waves in higher dimensional spacetimes with rotational symmetry. We apply and test this method in black-hole head-on collisions from rest in D = 6 spacetime dimensions and find that a fraction (8.19 +/- 0.05) x10(-4) of the Arnowitt-Deser-Misner mass is radiated away from the system, in excellent agreement with literature results based on the Kodama-Ishibashi perturbation technique. The method presented here complements the perturbative approach by automatically including contributions from all multipoles rather than computing the energy content of individual multipoles.
机译:引力波是分析强重力动力学分析中最重要的诊断工具之一,并且已成为Ligo检测GW150914的观察通道。除了他们对天体物理学的重要性,黑洞和紧凑型物质分布也在许多其他物理分支中都有一种核心作用。这些应用程序通常涉及与D> 4维度的刻度倍,其中重力波的计算比四维案例更涉及,但现在已经可以感谢D> 4中一般相对性的理论研究的实质性进展。我们通过对Newman-Penrose标量的Weyl Tensor的突起进行了作用的Nodazgar和Reall [1]的形式实施的数值执行 - 这允许通过旋转对称计算高尺寸刻度的重力波。我们在Block-Head的碰撞中申请和测试这种方法,休息在D = 6时刻尺寸,发现Arnowitt-Deser-Misner质量的分数(8.19 +/- 0.05)x10(-4)辐射从系统中,与基于Kodama-Ishibashi扰动技术的文献结果非常一致。这里呈现的方法通过自动包括来自所有多个人的贡献而不是计算各个多人的能量内容来补充扰动方法。

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